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Monoallelic variation in DHX9, the gene encoding the DExH-box helicase DHX9, underlies neurodevelopment disorders and Charcot-Marie-Tooth disease.

Authors :
Calame DG
Guo T
Wang C
Garrett L
Jolly A
Dawood M
Kurolap A
Henig NZ
Fatih JM
Herman I
Du H
Mitani T
Becker L
Rathkolb B
Gerlini R
Seisenberger C
Marschall S
Hunter JV
Gerard A
Heidlebaugh A
Challman T
Spillmann RC
Jhangiani SN
Coban-Akdemir Z
Lalani S
Liu L
Revah-Politi A
Iglesias A
Guzman E
Baugh E
Boddaert N
Rondeau S
Ormieres C
Barcia G
Tan QKG
Thiffault I
Pastinen T
Sheikh K
Biliciler S
Mei D
Melani F
Shashi V
Yaron Y
Steele M
Wakeling E
Østergaard E
Nazaryan-Petersen L
Millan F
Santiago-Sim T
Thevenon J
Bruel AL
Thauvin-Robinet C
Popp D
Platzer K
Gawlinski P
Wiszniewski W
Marafi D
Pehlivan D
Posey JE
Gibbs RA
Gailus-Durner V
Guerrini R
Fuchs H
Hrabě de Angelis M
Hölter SM
Cheung HH
Gu S
Lupski JR
Source :
American journal of human genetics [Am J Hum Genet] 2023 Aug 03; Vol. 110 (8), pp. 1394-1413. Date of Electronic Publication: 2023 Jul 18.
Publication Year :
2023

Abstract

DExD/H-box RNA helicases (DDX/DHX) are encoded by a large paralogous gene family; in a subset of these human helicase genes, pathogenic variation causes neurodevelopmental disorder (NDD) traits and cancer. DHX9 encodes a BRCA1-interacting nuclear helicase regulating transcription, R-loops, and homologous recombination and exhibits the highest mutational constraint of all DDX/DHX paralogs but remains unassociated with disease traits in OMIM. Using exome sequencing and family-based rare-variant analyses, we identified 20 individuals with de novo, ultra-rare, heterozygous missense or loss-of-function (LoF) DHX9 variant alleles. Phenotypes ranged from NDDs to the distal symmetric polyneuropathy axonal Charcot-Marie-Tooth disease (CMT2). Quantitative Human Phenotype Ontology (HPO) analysis demonstrated genotype-phenotype correlations with LoF variants causing mild NDD phenotypes and nuclear localization signal (NLS) missense variants causing severe NDD. We investigated DHX9 variant-associated cellular phenotypes in human cell lines. Whereas wild-type DHX9 was restricted to the nucleus, NLS missense variants abnormally accumulated in the cytoplasm. Fibroblasts from an individual with an NLS variant also showed abnormal cytoplasmic DHX9 accumulation. CMT2-associated missense variants caused aberrant nucleolar DHX9 accumulation, a phenomenon previously associated with cellular stress. Two NDD-associated variants, p.Gly411Glu and p.Arg761Gln, altered DHX9 ATPase activity. The severe NDD-associated variant p.Arg141Gln did not affect DHX9 localization but instead increased R-loop levels and double-stranded DNA breaks. Dhx9 <superscript>-/-</superscript> mice exhibited hypoactivity in novel environments, tremor, and sensorineural hearing loss. All together, these results establish DHX9 as a critical regulator of mammalian neurodevelopment and neuronal homeostasis.<br />Competing Interests: Declaration of interests J.R.L. has stock ownership in 23andMe, is a paid consultant for Genome International, and is a co-inventor on multiple US and European patents related to molecular diagnostics for inherited neuropathies, eye diseases, genomic disorders, and bacterial genomic fingerprinting. The Department of Molecular and Human Genetics at the Baylor College of Medicine receives revenue from clinical genetic testing conducted at Baylor Genetics (BG) Laboratories. F.M. and T.S.-S. are employees of GeneDx.<br /> (Copyright © 2023 American Society of Human Genetics. All rights reserved.)

Details

Language :
English
ISSN :
1537-6605
Volume :
110
Issue :
8
Database :
MEDLINE
Journal :
American journal of human genetics
Publication Type :
Academic Journal
Accession number :
37467750
Full Text :
https://doi.org/10.1016/j.ajhg.2023.06.013